一类高超音速导弹后阶控制器的设计

Junwei Lei, Shao-wu Dai, Zuoe Fan
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引用次数: 1

摘要

针对一类高超声速不确定导弹,提出了一种带虚拟作动器的全局终端后退控制器。在每一步中,我们都假设存在一个与实际作动器一样具有时间参数、极限能量和极限速度的虚拟作动器。虚拟执行器的概念可以使期望的值可以很容易地跟踪到下一步的反推设计。最后,采用控制器的软函数和参数自适应规律消除了导弹系统的不确定性。数值仿真结果表明了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of a Backsteping Controller for a Class of High-Supersonic Missiles
A new global terminal backsteping controller with virtual actuator is proposed for a class of high-supersonic uncertain missiles. On each step, we assume there exists a virtual actuator with a time parameter, limit energy and limit velocity just like a actual actuator. The virtual actuator concept can make the desired value can be easily traced by the next step of the backstepping design. At last, the uncertainties of missile system are eliminated by adopting the soft function and adaptive law of parameters of controller. And the numerical simulation shows the effectiveness of the proposed method.
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